A G<sub>s</sub>-coupled purinergic receptor boosts Ca<sup>2+</sup> influx and vascular contractility during diabetic hyperglycemia.

Prada, Maria Paz; Syed, Arsalan U; Buonarati, Olivia R; Reddy, Gopireddy R; Nystoriak, Matthew A; Ghosh, Debapriya; Simó, Sergi; Sato, Daisuke et al. · Elife · 2019

basic_science · Level V

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Abstract

Elevated glucose increases vascular reactivity by promoting L-type Ca<sub>V</sub>1.2 channel (LTCC) activity by protein kinase A (PKA). Yet, how glucose activates PKA is unknown. We hypothesized that a G<sub>s</sub>-coupled P2Y receptor is an upstream activator of PKA mediating LTCC potentiation during diabetic hyperglycemia. Experiments in apyrase-treated cells suggested involvement of a P2Y receptor underlying the glucose effects on LTTCs. Using human tissue, expression for P2Y<sub>11</sub>, the only G<sub>s</sub>-coupled P2Y receptor, was detected in nanometer proximity to Ca<sub>V</sub>1.2 and PKA. FRET-based experiments revealed that the selective P2Y<sub>11</sub> agonist NF546 and elevated glucose stimulate cAMP production resulting in enhanced PKA-dependent LTCC activity. These changes were blocked by the selective P2Y<sub>11</sub> inhibitor NF340. Comparable results were observed in mouse tissue, suggesting that a P2Y<sub>11</sub>-like receptor is mediating the glucose response in these cells. These findings established a key role for P2Y<sub>11</sub> in regulating PKA-dependent LTCC function and vascular reactivity during diabetic hyperglycemia.

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